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Theta burst stimulation-induced inhibition of dorsolateral prefrontal cortex reveals hemispheric asymmetry in striatal dopamine release during a set-shifting task – a TMS–11Craclopride PET study

机译:Theta爆裂刺激诱导的对背外侧前额叶皮层的抑制揭示了在定班任务中纹状体多巴胺释放的半球不对称性– TMS– 11C raclopride PET研究

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摘要

The prefrontostriatal network is considered to play a key role in executive functions. Previous neuroimaging studies have shown that executive processes tested with card-sorting tasks requiring planning and set-shifting [e.g. Montreal-card-sorting-task (MCST)] may engage the dorsolateral prefrontal cortex (DLPFC) while inducing dopamine release in the striatum. However, functional imaging studies can only provide neuronal correlates of cognitive performance and cannot establish a causal relation between observed brain activity and task performance. In order to investigate the contribution of the DLPFC during set-shifting and its effect on the striatal dopaminergic system, we applied continuous theta burst stimulation (cTBS) to left and right DLPFC. Our aim was to transiently disrupt its function and to measure MCST performance and striatal dopamine release during [11C]raclopride PET. A significant hemispheric asymmetry was observed. cTBS of the left DLPFC impaired MCST performance and dopamine release in the ipsilateral caudate–anterior putamen and contralateral caudate nucleus, as compared to cTBS of the vertex (control). These effects appeared to be limited only to left DLPFC stimulation while right DLPFC stimulation did not influence task performance or [11C]raclopride binding potential in the striatum. This is the first study showing that cTBS, by disrupting left prefrontal function, may indirectly affect striatal dopamine neurotransmission during performance of executive tasks. This cTBS-induced regional prefrontal effect and modulation of the frontostriatal network may be important for understanding the contribution of hemisphere laterality and its neural bases with regard to executive functions, as well as for revealing the neurochemical substrate underlying cognitive deficits.
机译:前额叶神经网络被认为在执行功能中起关键作用。先前的神经影像学研究表明,执行流程已通过卡片分类任务进行了测试,需要进行计划和转移设置。蒙特利尔卡分类任务(MCST)]可能在诱导纹状体中多巴胺释放的同时与背外侧前额叶皮层(DLPFC)接合。但是,功能成像研究只能提供认知表现的神经元相关性,而不能在观察到的大脑活动与任务表现之间建立因果关系。为了研究DLPFC在移位过程中的贡献及其对纹状体多巴胺能系统的影响,我们对左右DLPFC应用了连续θ爆裂刺激(cTBS)。我们的目的是暂时破坏其功能,并测量[ 11 C]雷氯必利PET期间的MCST性能和纹状体多巴胺释放。观察到明显的半球不对称性。与顶点的cTBS相比,左DLPFC的cTBS损害了同侧尾状前核和对侧尾状核的MCST性能和多巴胺释放。这些作用似乎仅限于左DLPFC刺激,而右DLPFC刺激并不影响纹状体中的任务表现或[ 11 C]雷氯必利结合潜力。这是第一项研究表明,cTBS通过破坏左前额叶功能,可能在执行执行任务时间接影响纹状体多巴胺神经传递。这种cTBS诱导的区域前额叶效应和额骨网的调节对于理解半球侧向及其对执行功能的神经基础的贡献,以及揭示潜在的认知缺陷的神经化学底物可能是重要的。

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